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沃尔巴克氏体介导的精子修饰在果蝇中取决于宿主基因型。

Wolbachia-mediated sperm modification is dependent on the host genotype in Drosophila.

作者信息

McGraw E A, Merritt D J, Droller J N, O'Neill S L

机构信息

Section of Vector Biology, Department of Epidemiology and Public Health, Yale University School of Medicine, 60 College Street, New Haven, CT 06520, USA.

出版信息

Proc Biol Sci. 2001 Dec 22;268(1485):2565-70. doi: 10.1098/rspb.2001.1839.

Abstract

Estimates of Wolbachia density in the eggs, testes and whole flies of drosophilid hosts have been unable to predict the lack of cytoplasmic incompatibility (CI) expression in so-called mod(-) variants. Consequently, the working hypothesis has been that CI expression, although related to Wolbachia density, is also governed by unknown factors that are influenced by both host and bacterial genomes. Here, we compare the behaviour of the mod(-) over-replicating Wolbachia popcorn strain in its native Drosophila melanogaster host to the same strain transinfected into a novel host, namely Drosophila simulans. We report that (i) the popcorn strain is a close relative of other D. melanogaster infections, (ii) the mod(-) status of popcorn in D. melanogaster appears to result from its inability to colonize sperm bundles, (iii) popcorn is present in the bundles in D. simulans and induces strong CI expression, which demonstrates that the bacterial strain does not lack the genetic machinery for inducing CI and that there is host-species-specific control over Wolbachia tissue tropism, and (iv) infection of sperm bundles by the mod(-) D. simulans wCof strain indicates that there are several independent routes by which a strain can be a CI non-expressor.

摘要

对果蝇宿主的卵、睾丸和整个果蝇体内沃尔巴克氏体密度的估计,无法预测所谓的mod(-)变体中细胞质不亲和(CI)表达的缺失。因此,目前的工作假设是,CI表达虽然与沃尔巴克氏体密度有关,但也受未知因素的控制,这些因素受到宿主和细菌基因组的影响。在这里,我们将mod(-)过度复制的沃尔巴克氏体爆米花菌株在其天然宿主黑腹果蝇中的行为,与转染到新宿主即拟果蝇中的同一菌株的行为进行了比较。我们报告称:(i)爆米花菌株是黑腹果蝇其他感染菌株的近亲;(ii)爆米花在黑腹果蝇中的mod(-)状态似乎是由于其无法定殖于精子束;(iii)爆米花存在于拟果蝇的精子束中并诱导强烈的CI表达,这表明该细菌菌株并不缺乏诱导CI的遗传机制,并且对沃尔巴克氏体的组织嗜性存在宿主物种特异性控制;(iv)mod(-)拟果蝇wCof菌株对精子束的感染表明,一个菌株可以通过几种独立的途径成为CI不表达者。

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